Offshore Wind Energy Technology

Couverture
John Wiley & Sons, 29 mai 2018 - 464 pages

A COMPREHENSIVE REFERENCE TO THE MOST RECENT ADVANCEMENTS IN OFFSHORE WIND TECHNOLOGY

Offshore Wind Energy Technology offers a reference based on the research material developed by the acclaimed Norwegian Research Centre for Offshore Wind Technology (NOWITECH) and material developed by the expert authors over the last 20 years. This comprehensive text covers critical topics such as wind energy conversion systems technology, control systems, grid connection and system integration, and novel structures including bottom-fixed and floating. The text also reviews the most current operation and maintenance strategies as well as technologies and design tools for novel offshore wind energy concepts.

The text contains a wealth of mathematical derivations, tables, graphs, worked examples, and illustrative case studies. Authoritative and accessible, Offshore Wind Energy Technology:

  • Contains coverage of electricity markets for offshore wind energy and then discusses the challenges posed by the cost and limited opportunities
  • Discusses novel offshore wind turbine structures and floaters
  • Features an analysis of the stochastic dynamics of offshore/marine structures
  • Describes the logistics of planning, designing, building, and connecting an offshore wind farm
Written for students and professionals in the field, Offshore Wind Energy Technology is a definitive resource that reviews all facets of offshore wind energy technology and grid connection.
 

Table des matières

Energy Conversion Systems for Offshore Wind Turbines 13
13
Modelling and Analysis of Drivetrains
37
Fixed and Floating Offshore Wind Turbine Support Structures
103
Offshore Wind Turbine Controls
143
Offshore Wind Farm Technology and Electrical Design
239
Operation and Maintenance Modelling
269
Supervisory Wind Farm Control
305
Offshore Transmission Technology
345
Grid Integration and Control for Power System Operation Support
381
Market Integration and System Operation
397
Appendix
407
Index
415
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À propos de l'auteur (2018)

OLIMPO ANAYA-LARA is a Reader in the Wind Energy and Control Centre at the University of Strathclyde, Glasgow, UK.

JOHN O. TANDE is a Chief Scientist with SINTEF Energy Research and Director of NOWITECH, Norway.

KJETIL UHLEN is a Professor in Electrical Power Systems at the Norwegian University of Science and Technology (NTNU), Norway.

KARL MERZ is a Research Scientist at SINTEF Energy Research, Norway.

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